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In vitro and in vivo expression of opioid and sigma receptors in rat C6 glioma and mouse N18TG2 neuroblastoma cells.

Mouse N18TG2 neuroblastoma and rat C6 glioma cell lines were injected into male nude mice, and the tumors were passaged serially. At each generation, tumors were analyzed for delta opioid binding using [3H][D-Ala2,D-Leu5]enkephalin and for sigma 1 and sigma 2 binding with 1,3-[3H]di-o-tolylguanidine in the presence and absence of 1 microM pentazocine. Receptor density (Bmax) and affinity (KD) were estimated by homologous competition binding assays. Opioid and sigma Bmax values in the solid tumors were significantly lower than their original levels in vitro. KD values for opioid/sigma ligands were similar in vitro and in vivo. With successive passages in the murine host, delta opioid and sigma 1 binding of the neuroblastoma-derived solid tumors became undetectable. In contrast, sigma 2 receptor Bmax values were unchanged with successive passages of the neuroblastoma-derived tumors and doubled in the nude mouse-borne gliomas. When neuroblastoma-derived solid tumors that were devoid of delta opioid binding were returned to culture, opioid receptors appeared to be up-regulated as compared with their original in vitro levels. Serial passaging of these recultured cells in vivo again resulted in a rapid decline in opioid receptor content. The opioid data are consistent with our prior findings on opioid binding diminution in human brain tumors. The pattern of change for sigma binding was more complex, with the sigma 2 response in late passages of the glioma being reminiscent of the formerly observed increase in number of sigma sites in transformed human meninges, kidney, and colon tissue.

Animals↗

Stable deletions arising in the readthrough region of Soil-borne wheat mosaic virus RNA2 define the 5' limit of the functional promoter for the p19 subgenomic RNA.

The appearance of de novo deletion mutations in the readthrough (RT) region (nucleotide positions 861-2591) downstream of the capsid protein (CP) gene of a Japanese strain of Soil-borne wheat mosaic virus RNA2 was examined using infectious transcripts. Mutant RNA2s with different deletions predominated in independent serial passage experiments but all best-adapted mutants retained the 3'-terminal portion of the RT gene in frame with the CP gene. The longest best-adapted mutation deleted the 1434 nucleotides between positions 1061 and 2494. When the RT protein was truncated by insertion of a termination codon plus an additional nucleotide to give a +1 frame-shift, after serial passages the progeny viruses regained the ability to express the C-terminal region of RT by an internal deletion. The 5' terminus of the p19 subgenomic RNA was identified at position 2598 and an essential transcription signal for this mRNA mapped between positions 2534 and 2563. A mutant in which this essential promoter element has been deleted cannot transcribe the p19 subgenomic RNA and has lost infectivity in planta. These results indicate that the 3'-terminal region of the RT gene has a major function in cis for expression of p19, which is essential for infecting plants. A reason for retaining the RT C-terminal region in stable deletion mutants is still unknown.

3' Flanking Region↗

Live attenuated vaccine for hepatitis A.

The successful development of hepatitis B vaccines has stimulated interest in the active immunoprophylaxis of type A hepatitis. The development of hepatitis A vaccines has been simplified by the ability to propagate HAV in tissue culture systems and the availability of animal model systems, including the chimpanzee and certain species of marmosets in which to evaluate safety and efficacy of candidate vaccines. Both inactivated and live, attenuated hepatitis A vaccines are possible, but the limited replicative ability of HAV in tissue culture makes the former impractical at present. However, HAV appears to be rapidly attenuated by serial passage in tissue culture and such attenuated strains are candidates for a live, attenuated vaccine similar to the Sabin polio vaccine. The HM-175 strain of HAV, recovered from the stool of a patient with type A hepatitis in Melbourne, Australia, was isolated directly in primary African green monkey kidney (AGMK), a cell substrate suitable for vaccine development. This strain has been serially passaged over 20 times in AGMK. The parent strain (stool extract) and virus at tissue culture passages 10 and 20 were evaluated for infectivity and virulence in seronegative chimpanzees. The parent strain produced evidence of liver damage (elevated liver enzymes) at all dilutions of infectious virus tested. In contrast, tissue culture-passaged virus was fully infectious for chimpanzees, but did not produce biochemical evidence of hepatitis. Similarly, hepatitis A viral antigen could not be detected in liver biopsies and little or no viral antigen could be detected in acute phase stool samples.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Heterotransplantation of ovine squamous cell carcinomata into nude mice.

Twenty-five tumours sampled from various sites on sheep were implanted subcutaneously into nude mice. Of these, 10 were successfully transplanted and serially passaged. An association was found between the tumour growth site on the sheep and its acceptance as a xenograft, with those derived from the skin of the nose being the most successful. Both growth pattern (expansive or invasive) and the histological appearance of the xenografts were similar to that observed in the sheep although faster growth rates were observed after the tumour was serially passaged in the nude mouse.

Animals↗

Derivation of attenuated porcine epidemic diarrhea virus (PEDV) as vaccine candidate.

The field isolate of porcine epidemic diarrhea virus (PEDV) was serially passaged in Vero cells. The cell passaged PEDV, designated KPEDV-9, was tested for its pathogenicity in the neonatal pigs, immunogenicity and safety in the pregnant sows. The result indicated that KPEDV-9 at the 93rd passage revealed reduced pathogenicity in the neonatal pigs. Pregnant sows inoculated with the attenuated virus showed increased immune responses by ELISA. In addition, delivered piglets were protected from challenge of wild type PEDV. The safety test in pregnant sows indicated that all inoculated animals farrowed the average numbers of litters of piglets. The results of this study supported that the attenuated virus derived from serial passage could be applied as vaccine for protecting suckling piglets against PEDV infection.

Amino Acid Sequence↗

Distinction between differentiation and senescence and the absence of increased apoptosis in human keratinocytes undergoing cellular aging in vitro.

We have examined the processes of differentiation and apoptosis in relation to cellular aging by using a culture system based on serial passaging of monolayer cultures of human keratinocytes in a serum-free low calcium medium. Differentiation was analyzed by cellular morphology and by the expression of keratinocyte transglutaminase. Keratinocyte cultures at all passages could be induced to differentiate into mature keratinocytes by raising the calcium concentration in the medium. Differentiation could also be induced in senescent cultures, but the process was significantly slower. Apoptosis was analyzed by cellular morphology and by the expression of tissue transglutaminase. Apoptotic cells constituted a very small proportion of the culture and no detectable change in the incidence of apoptosis occurred during serial passaging.

Adult↗

A xenograft line of human teratocarcinoma established by serial transplantation in severe combined immunodeficient (SCID) mice.

We established a xenograft line of human teratocarcinoma (TC-1) and characterized the pluripotency of differentiation of the neoplastic cells. A teratocarcinoma specimen obtained from a primary mediastinal lesion (22-year-old male patient) was inoculated subcutaneously into severe combined immunodeficient (SCID) mice. The carcinoma formed tumors in the mice. We established a xenograft line by serial passage of the tumor in vivo. The primary tumor was composed of papillary and pseudoglandular nests of highly atypical epithelial cells with foci of glomeruloid structures. The metastatic cells showed apparent production of mucin and differentiation to striated muscle. The xenograft line TC-1 retained the basic histopathological features seen in the primary and metastatic cells. The xenograft line showed focal differentiation to cartilage through serial passages. Immunohistochemical studies with anti-alpha-fetoprotein (AFP) demonstrated positive immunoreactivity on the TC-1 cells. Serum AFP levels were also elevated in the TC-1-bearing SCID mice. The human teratocarcinoma xenograft line TC-1 will be useful for studying the differentiation mechanism in human totipotent stem cells.

Adult↗

Adaptation of plaque assay methods to the in vitro quantitation of the radiation leukemia virus.

A modification of the XC cell procedure for murine leukemia virus assay which yields quantitative data over a wide range of virus concentrations is described. By using serial passage of infected cell cultures and reversal of the plating sequence in the XC procedure, titers of radiation leukemia virus (RadLV) were obtained which were about 10-fold higher than those found by using the conventional assay. By using the modified procedure, it was observed that, even at high multiplicities of infection, less than 10% of the cells function as infective centers, although the proportion increases with serial passage. It was also observed that exposure of infected cells to UV light, which is commonly used to make plaques more visible in the conventional XC cell test, inhibits plaque formation in the RadLV system. Substitution of X irradiation for UV exposure improved plaque visibility without loss of sensitivity.

Animals↗

Alloproliferative responses of purified CD4+ and CD8+ T cells to endothelial cells in the absence of contaminating accessory cells.

Human capillary endothelial cells (EC), unlike rodent, constitutively express MHC class II antigens, raising the question of whether they can cause direct stimulation of resting T cells. Although previous reports have demonstrated an alloproliferative response between cultured human EC and resting T lymphocytes, they have not stringently proven the absence of contaminating leukocytes in both stimulator and responder populations. Here, we have quantitated the number of contaminating leukocytes in serially passaged human umbilical vein endothelial cells (HUVEC) and have examined the ability of HUVEC and an EC line (EAhy.926) to cause allostimulation of positively selected CD4+ and CD8+ T cells. Contaminating CD45+ leukocytes were found in primary cultures at a mean level of 0.43 +/- 0.49%; by passages 3 and 4 there were less than 1/10,000 cells. CD4+ and CD8+ T cells were purified by positive selection on antibody-coated Dynabeads and residual DR+ cells were removed by complement-dependent lysis. They were shown to be depleted of monocytes by their failure to proliferate in response to OKT3 and PHA. Nevertheless, the same cells gave an unequivocal response to cytokine-treated, serially passaged HUVEC or EAhy.926 cells. The response of CD4+ but not CD8+ T cells was dependent upon pretreatment of HUVEC or EAhy.926 with human rIFN-gamma. Neither CD4+ nor CD8+ T cells responded to MHC class II-bearing fibroblasts or epithelial cells. The CD8+ T cells that recognized EC did not respond to spleen cells in an MLR. The results confirm that EC, unlike other non-bone-marrow-derived cells, have the ability to provide all the signals necessary for direct stimulation of resting allogeneic T cells.

Antigen-Presenting Cells↗

Persistent infections in L cells with temperature-sensitive mutants of reovirus.

Serial passage of reovirus temperature-sensitive (ts) mutant C(447) produced by passage 9 (P9) a heavily defective population of virus from which the double-stranded RNA genomic segments L(1), L(3), and M(1) were largely missing. Viral cores obtained from this P9 population were heterogeneous with respect to buoyant density in CsCl gradients, suggesting that particles were present with different combinations of deleted segments. Similar observations were made with the E(320) ts mutant of reovirus. By serial passage P15, 90% of the E(320) viral population was defective and the major missing genomic segments were L(1) and L(3). Persistent infections were readily established in monolayer cultures of L cells with P9 of C(447) virus and P15 of E(320) virus and in Vero cells with P9 of C(447) virus. Under similar conditions persistent infections could not be initiated with defective-free populations of C(447) or E(320) viruses. The greater the capacity of defective virus in the population to interfere with viral growth, the more readily persistent infection was initiated. During their maintenance persistently infected cells were subcultured approximately twice a week. More than 80% of the cells continuously produced virus. By subculture 6 the original ts infectious viral component had been replaced by a small-plaque mutant with a ts(+) phenotype. Defective virus was always present in the carrier cells. In addition to the more commonly observed defectives whose cores banded at approximately rho = 1.40 to 1.415 g/ml in CsCl gradients, a new class of defective core was seen banding in the region of 1.34 to 1.36 g/ml. This latter particle, which has not been thoroughly characterized as yet, is termed "light defective." Persistently infected cells underwent periodic crises during their maintenance, during which the cultures partially lysed and then rapidly grew to confluence. Crises corresponded to a burst of infectious virus from the cells and a relatively low concentration of light defectives. During quiescent periods the concentration of light defectives amounted to as much as 98% of the total viral population. The function of light defectives is not yet clear, but it seems essential to assign major importance to defective virus in maintaining persistent infections in this system.

Defective Viruses↗

Antigenic and genetic variation in cytopathic hepatitis A virus variants arising during persistent infection: evidence for genetic recombination.

Variants of hepatitis A virus (pHM175 virus) recovered from persistently infected green monkey kidney (BS-C-1) cells induced a cytopathic effect during serial passage in BS-C-1 or fetal rhesus kidney (FRhK-4) cells. Epitope-specific radioimmunofocus assays showed that this virus comprised two virion populations, one with altered antigenicity including neutralization resistance to monoclonal antibody K24F2, and the other with normal antigenic characteristics. Replication of the antigenic variant was favored over that of virus with the normal antigenic phenotype during persistent infection, while virus with the normal antigenic phenotype was selected during serial passage. Viruses of each type were clonally isolated; both were cytopathic in cell cultures and displayed a rapid replication phenotype when compared with the noncytopathic passage 16 (p16) HM175 virus which was used to establish the original persistent infection. The two cytopathic virus clones contained 31 and 34 nucleotide changes from the sequence of p16 HM175. Both shared a common 5' sequence (bases 30 to 1677), as well as sequence identity in the P2-P3 region (bases 3249 to 5303 and 6462 to 6781) and 3' terminus (bases 7272 to 7478). VP3, VP1, and 3Cpro contained different mutations in the two virus clones, with amino acid substitutions at residues 70 of VP3 and 197 and 276 of VP1 of the antigenic variant. These capsid mutations did not affect virion thermal stability. A comparison of the nearly complete genomic sequences of three clonally isolated cytopathic variants was suggestive of genetic recombination between these viruses during persistent infection and indicated that mutations in both 5' and 3' nontranslated regions and in the nonstructural proteins 2A, 2B, 2C, 3A, and 3Dpol may be related to the cytopathic phenotype.

Animals↗

Changes in immunoferritin labeling of Rickettsia tsutsugamushi after serial cultivation in 60Co-irradiated BHK cells.

The immunolabeling characteristics of Rickettsia tsutsugamushi (Gilliam strain) were examined by using a purified immunoglobulin G fraction of antibody to R. tsutsugamushi raised in rabbits. Formalin-fixed rickettsiae were reacted with this antibody and then with ferritin-conjugated goat anti-rabbit Fc antibody. R. tsutsugamushi cultivated in yolk sacs was used to raise antibody for this study. When rickettsiae in BHK-21 cells infected from yolk sac seed material were immunoferritin labeled, the binding of ferritin was found to be dense and uniform on the outer surface of the rickettsiae in disrupted host cells. Immunolabeling of purified suspensions of extracellular rickettsiae resulted in the uniform ferritin labeling of the microorganism. Aggregation of these rickettsiae by antibody appeared to depend upon the purity of the pellets. Immunoferritin labeling examined at high magnification revealed ferritin very close to the outer dense leaflet of the outer membrane. On some rickettsiae or on focal sites of others, the labelin; was several ferritin particles thick, suggesting the presence of a thick coating. The immunoferritin labeling of R. tsutsugamushi during successive serial passages in BHK-21 cells revealed decreased labeling with each passage, and by the 10th passage there was no detectable labeling. However, these rickettsiae inoculated back into yolk sacs regained their immunoferritin labeling. R. tsutsugamushi passed back into yolk sacs after four serial propagations in BHK-21 cells regained their labeling on the first passage in yolk sacs. However, rickettsiae from the 20th serial passage in BHK-21 cells required five passages in yolk sacs to reestablish their previous labeling affinity. Rickettsiae which did not label after 20 passages in BHK cells regained some of their labeling characteristics when sonicated. Antibody against rickettsiae cultivated in BHK-21 cells continued labeling rickettsiae even after 9 serial passages in BHK-21 cells.

Animals↗

Aminoglycoside cross-resistance patterns of gentamicin-resistant bacteria.

Ten strains each of Escherichia coli, Staphylococcus aureus, and Pseudomonas aeruginosa were habituated to gentamicin by serial passage in antibiotic containing medium. Complete cross-resistance to streptomycin, neomycin, kanamycin, and tobramycin in a linear proportional fashion was demonstrated at all stages of habituation. Most strains of Staph. aureus and Ps. aeruginosa showed a greater increase in resistance to gentamicin than to the other three aminoglycosides. E. coli required more transfers to reach the same degree of resistance than did the other two species. Reversion to greater susceptibility to gentamicin took place after serial passage on antibiotic-free media. 'Wild' gentamicin-resistant strains showed no such proportionality of resistance to kanamycin, neomycin, or streptomycin. But many of these strains showed a proportional increase in resistance to tobramycin.

Aminoglycosides↗

Derivation and characterization of putative pluripotential embryonic stem cells from preimplantation rabbit embryos.

We have derived putative embryonic stem (ES) cell lines from preimplantation rabbit embryos and report here their initial characterization. Two principal cell types emerged following serial passage of explanted embryos, and each has subsequently given rise to immortalized cell lines. One cell type has morphology identical to primary outgrowths of trophectoderm, is strictly feeder-cell dependent, and spontaneously forms trophectodermal vesicles at high cell density. The second type appears to represent pluripotent ES cells derived from the inner cell mass as evidenced by 1) ability to grow in an undifferentiated state on feeder layers, 2) maintenance of a predominantly normal karyotype through serial passage (over 1 year), and 3) ability to form embryoid bodies, which form terminally differentiated cell types representative of ectoderm, mesoderm, and endoderm. These ES cells may ultimately be suitable for introduction of germline mutations (via homologous recombination). The rabbit's size, reproductive capability, and well-characterized physiology make it suitable for a wide range of investigations, particularly for development of large animal models of human disease.

Animals↗

Establishment and characterization of a new human glioblastoma cell line (MGM-1) with highly motile phenotype.

A new cell line MGM-1 was established from a primary tumor of the left temporal lobe with histological diagnosis of glioblastoma multiforme, removed from a 64-year-old Japanese male. The patient died of recurrence and unusual extracranial metastases of the tumor 7 months after the surgery. The cultured MGM-1 cells are spindle or polygonal in shape. After serial passages, glial fibrillary acidic protein became negative immunocytochemically in vitro. The modal chromosome number was 61-64. Doubling time and soft agar colony forming efficiency were 42.9h and 0.4%, respectively (at 25th passage). MGM-1 is a highly motile cell line in vitro and its serum-free conditioned medium is chemotactic and chemokinetic for other glioma cells. Secretion of gelatinases (probably MMP-2/72-kDa type i.v. collagenase) and MMP-9/92-kDa type i.v. collagenase) and urokinase-type plasminogen activator were also investigated. MGM-1 would therefore be useful for studying the mechanisms regulating glioma-cell motility and invasion. The MGM-1 cell line has been propagated continuously by serial passages (more than 100 passages) during the past 4 years.

Brain Neoplasms↗

Cytochemical detection of a senescence-associated beta-galactosidase in endothelial and smooth muscle cells from human and rabbit blood vessels.

A beta-galactosidase activity has recently been used as a histochemical marker of replicative senescence in human fibroblasts and keratinocytes. To establish whether this marker could be used to detect senescence of vascular cells, we have investigated its presence in cultures of serially passaged human umbilical vein endothelial cells and rabbit aortic smooth muscle cells. beta-Galactosidase activity was detected by light microscopy using the chromogenic substrate 5-bromo-4-chloro-3-indolyl beta-d-galactopyranoside. In endothelial cell cultures, lysosomal beta-galactosidase activity, which is detected at pH 4.0, was present in all cells regardless of their replicative age. In contrast, senescence-associated beta-galactosidase activity, which is detected at pH 6.0, was absent in the majority of cells in early passage cultures (<15 cumulative population doublings), but was present in a large proportion of cells (up to 62%) in late passage cultures (>30 cumulative population doublings); in intermediate passage cultures (15-30 cumulative population doublings) it was found in fewer than 15% of the cells. The increase in the percentage of senescence-associated beta-galactosidase-positive cells correlated with a decrease in the cell density at confluence and with a marked increase in cell size. Counterstaining with an antibody directed against the endothelial cell marker CD31 showed that senescent cells retained the expression of this antigen. Senescence-associated beta-galactosidase was also detected in serially passaged, but not in primary explant cultures of rabbit aortic vascular smooth muscle cells. The presence of senescence-associated beta-galactosidase in cultured vascular smooth muscle cells and endothelial cells suggests that this marker could be used to study the role of cellular senescence in vascular disease.

Animals↗

Resistance studies with daptomycin.

We studied the in vitro emergence of resistance to daptomycin using three methods: spontaneous resistance incidence, serial passage in the presence of increasing drug concentrations, and chemical mutagenesis. No spontaneously resistant mutants were obtained for any organism tested (<10(-10) for Staphylococcus aureus, <10(-9) for Staphylococcus epidermidis, <10(-9) for Enterococcus faecalis, <10(-9) for Enterococcus faecium, <10(-8) for Streptococcus pneumoniae). Population analysis demonstrated that bacterial susceptibility to daptomycin is heterogeneous. Assay results were sensitive to calcium concentration and culture density, both of which can affect apparent resistance rates. Stable S. aureus mutants were isolated by both serial passage in liquid media and chemical mutagenesis. The daptomycin MICs for these isolates were 8- to 32-fold higher than for the parental strain. Many mutants with high MICs (>12.5 microg/ml) had significant growth defects but did not display phenotypes typical of S. aureus small colony variants. The voltage component (Delta psi) of the bacterial membrane potential was increased in three independent resistant isolates. In vivo data showed that some daptomycin-resistant mutants had lost significant virulence. For other mutants, the degree of in vitro resistance was greater than the change in in vivo susceptibility. These results suggest that infection with some daptomycin-resistant organisms may still be easily treatable.

Animals↗

In vitro migration of tumor cells from human neoplasms: inhibition by lymphokines.

We have previously described a noncytotoxic lymphokine, TMIF, with the capacity of inhibiting the in vitro migration of a variety of serially passaged experimental animal tumors, but not non-neoplastic cells. In the present study, we describe conditions for the assay of human tumor cell movement utilizing agarose microdroplets. Using this procedure, we were able to demonstrate that TMIF is as effective in inhibiting the in vitro migration of suspensions of tumor cells obtained from spontaneous human neoplasms, as it is in inhibiting model tumor systems. This finding demonstrates that responsiveness to TMIF is not merely a property conferred on tumor cells by prior serial passage. Also, by demonstrating that tumors of human origin are responsive, the present study raises the possibility that studies of TMIF in neoplastic disease may provide information of prognostic value. Also, they provide the hope that if TMIF proves therapeutically effective in animal models, those results may be translated to human disease.

Cell Migration Inhibition↗